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Photoinduced refractive index change in As2Se3 by 633nm illumination

Andy C. van Popta、R. G. DeCorby、C.J. Haugen 等 7 位作者2002-07-29Optics Express

Photodarkening of amorphous As2Se3 thin films was generated by a 633-nm HeNe laser. The refractive index and absorption coefficient of the chalcogenide glass was determined, both before and after exposure, by analyzing the material's transmission spectrum. In order to accurately determine the optical constants, the th…

Photonic and Optical DevicesPhase-change materials and chalcogenidesNonlinear Optical Materials Studies

Tensile elongation (110%) observed in ultrafine-grained Zn at room temperature

X. Zhang、Haiyan Wang、R.O. Scattergood 等 7 位作者2002-07-29Applied Physics Letters

Tensile tests were performed for Zn at room temperature, which show elongations of 110%–20% for average grain sizes of 240–23 nm, respectively. The ductility of ultrafine-grained and nanocrystalline Zn was found to decrease with grain size refinement. The deformation mechanisms in ultrafine-grained Zn are believed to…

Microstructure and mechanical propertiesMetal Forming Simulation TechniquesAluminum Alloys Composites Properties

Charge transport through small silicon clusters

Christopher Roland、Vincent Meunier、Brian Larade 等 4 位作者2002-07-29Physical review. B, Condensed matter

With a recently developed ab initio nonequilibrium Green's-function formalism, we have investigated the transport behavior of small ${\mathrm{Si}}_{n},$ $n=1--10,$ 13, and 20 nanoclusters between atomistic Al and Au leads. All of the clusters display metallic $I\ensuremath{-}V$ characteristics, with typical conductanc…

Graphene research and applicationsMolecular Junctions and NanostructuresSemiconductor materials and interfaces

From incipient ferroelectricity in CaTiO3 to real ferroelectricity in Ca1−xPbxTiO3 solid solutions

V. V. Lemanov、A. V. Sotnikov、Е. П. Смирнова 等 4 位作者2002-07-29Applied Physics Letters

Dielectric spectra of ceramic samples of Ca1−xPbxTiO3 (0⩽x⩽0.4) solid solutions were studied at frequencies between 10 Hz and 1 MHz in a temperature range of 4.2–300 K. A ferroelectric phase transition was observed at x=0.3 with transformation to a relaxor type behavior at x>0.3. The transition temperature Tc f…

Ferroelectric and Piezoelectric MaterialsGlass properties and applicationsAcoustic Wave Resonator Technologies

Logarithmic relaxation in glass-forming systems

W. Götze、Matthias Sperl2002-07-29Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics

Within the mode-coupling theory for ideal glass transitions, an analysis of the correlation functions of glass-forming systems for states near higher-order glass-transition singularities is presented. It is shown that the solutions of the equations of motion can be asymptotically expanded in polynomials of the logarit…

Material Dynamics and PropertiesGlass properties and applicationsTheoretical and Computational Physics

Electronic properties of multiwalled carbon nanotubes in an embedded vertical array

Jun Li、Ramsey Stevens、Lance Delzeit 等 7 位作者2002-07-29Applied Physics Letters

We demonstrate integration of carbon nanotubes into large scale vertically aligned electrode arrays, by filling the as-grown samples with conformal SiO2 using chemical vapor deposition. Subsequent mechanical polishing yields a flat surface with only the very ends of the nanotube array exposed. The electronic propertie…

Carbon Nanotubes in CompositesForce Microscopy Techniques and ApplicationsMechanical and Optical Resonators

Magnetron sputtered epitaxial single-phase Ti3SiC2 thin films

J.-P. Palmquist、Ulf Jansson、T. Seppänen 等 7 位作者2002-07-29Applied Physics Letters

We report on the synthesis and characterization of epitaxial single-crystalline Ti3SiC2 films (Mn+1AXn-phase). Two original deposition techniques are described, (i) magnetron sputtering from Ti3SiC2 compound target and (ii) sputtering from individual titanium and silicon targets with co-evaporated C60 as carbon source…

2D Materials and ApplicationsMXene and MAX Phase MaterialsFerroelectric and Negative Capacitance Devices

Efficient isotropic magnetic resonators

Philippe Gay-Balmaz、Olivier J. F. Martin2002-07-29Applied Physics Letters

We study experimentally and numerically a novel three-dimensional magnetic resonator structure with high isotropy. It is formed by crossed split-ring resonators and has a response independent of the illumination direction in a specific plane. The utilization of such elements to build a finite left-handed medium is dis…

Metamaterials and Metasurfaces ApplicationsPhotonic Crystals and ApplicationsAdvanced Antenna and Metasurface Technologies

Theoretical Studies of Quantum Interference in Electronic Transport Through Carbon Nanotubes

W. Iwo Babiaczyk、Bogdan. R. Bulka2002-07-29arXiv

We performed studies of coherent electronic transport through a single walled carbon nanotube. In the calculations multiple scattering on the contacts and interference processes were taken into account. Conductance is a composition of contributions from different channels. We studied also spin--dependent transport in…

Mesoscale and Nanoscale PhysicsMaterials Science

Electronic Structure of the YH3 Phase from Angle-Resolved Photoemission Spectroscopy

J. Hayoz、C. Koitzsch、M. Bovet 等 6 位作者2002-07-29arXiv

Yttrium can be loaded with hydrogen up to high concentrations causing dramatic structural and electronic changes of the host lattice. We report on angle-resolved photoemission experiments of the Y trihydride phase. Most importantly, we find the absence of metal d-bands at the Fermi level and a set of flat, H-induced b…

Materials Science

Dynamics of pattern coarsening in a two-dimensional smectic system

Christopher Harrison、Zhengdong Cheng、S. Sethuraman 等 9 位作者2002-07-29Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics

We have followed the coarsening dynamics of a single layer of cylindrical block copolymer microdomains in a thin film. This system has the symmetry of a two-dimensional smectic. The orientational correlation length of the microdomains was measured by scanning electron microscopy and found to grow with the average spac…

Liquid Crystal Research AdvancementsBlock Copolymer Self-AssemblyFluid Dynamics and Thin Films

Configurational Entropy of Network-Forming Materials

R. L. C. Vink、G. T. Barkema2002-07-29Physical Review Letters

We present a computationally efficient method to calculate the configurational entropy of network-forming materials. The method requires only the atomic coordinates and bonds of a single well-relaxed configuration. This is in contrast to the multiple simulations that are required for other methods to determine entropy…

Material Dynamics and PropertiesPhase-change materials and chalcogenides

Pure-carbon ring transistor: Role of topology and structure

Gianaurelio Cuniberti、Juyeon Yi、Markus Porto2002-07-29Applied Physics Letters

We report results on the rectification properties of a carbon nanotube (CNT) ring transistor, contacted by CNT leads, whose novel features have been recently communicated by H. Watanabe, C. Manabe, T. Shigematsu, and M. Shimizu [Appl. Phys. Lett. 78, 2928 (2001)]. This letter contains results which are validated by th…

Carbon Nanotubes in CompositesGraphene research and applicationsMechanical and Optical Resonators

Solid state molecular rectifier based on self organized metalloproteins

Ross Rinaldi、Adriana Biasco、Giuseppe Maruccio 等 10 位作者2002-07-29arXiv

Recently, great attention has been paid to the possibility of implementing hybrid electronic devices exploiting the self-assembling properties of single molecules. Impressive progress has been done in this field by using organic molecules and macromolecules. However, the use of biomolecules is of great interest becaus…

Materials Science

Integration of suspended carbon nanotube arrays into electronic devices and electromechanical systems

Nathan R. Franklin、Qian Wang、Thomas W. Tombler 等 6 位作者2002-07-29Applied Physics Letters

A synthetic strategy is devised for reliable integration of long suspended single-walled carbon nanotubes into electrically addressable devices. The method involves patterned growth of nanotubes to bridge predefined molybdenum electrodes, and is versatile in yielding various microstructures comprised of suspended nano…

Carbon Nanotubes in CompositesMechanical and Optical ResonatorsNanotechnology research and applications

The molecular structure of spider dragline silk: Folding and orientation of the protein backbone

Jacco D. van Beek、S. Hess、Fritz Vollrath 等 4 位作者2002-07-29OpenAlex

The design principles of spider dragline silk, nature's high-performance fiber, are still largely unknown, in particular for the noncrystalline glycine-rich domains, which form the bulk of the material. Here we apply two-dimensional solid-state NMR to determine the distribution of the backbone torsion angles (phi,psi)…

Invertebrate Immune Response MechanismsSilk-based biomaterials and applicationsPhytochemical compounds biological activities

Molecular Junctions by Joining Single-Walled Carbon Nanotubes

Mauricio Terrones、Florian Banhart、Nicole Grobert 等 6 位作者2002-07-29OpenAlex

Crossing single-walled carbon nanotubes can be joined by electron beam welding to form molecular junctions. Stable junctions of various geometries are created in situ in a transmission electron microscope. Electron beam exposure at high temperatures induces structural defects which promote the joining of tubes via cro…

Carbon Nanotubes in CompositesGraphene research and applicationsNanotechnology research and applications

Virial pressure of periodic systems with long range forces

Roland G. Winkler2002-07-28The Journal of Chemical Physics

The virial expression of the pressure of systems with periodic boundary conditions is discussed for long range Coulomb interactions. It is shown, that the mechanical definition of the pressure leading to the virial pressure agrees with the thermodynamical definition for such systems.

High-pressure geophysics and materialsMaterial Dynamics and Propertiesnanoparticles nucleation surface interactions

Neural network model of magnetic hysteresis

Miklós Kuczmann、Amàlia Iványi2002-07-28COMPEL The International Journal for Computation and Mathematics in Electrical and Electronic Engineering

The classical Preisach model and its modifications are one of the most generally applied simulations to model the behavior of magnetic materials, to describe hysteresis phenomena and different properties, as noncongruent minor loops, frequency dependence, temperature dependence, accommodation, and so on. Artificial ne…

Force Microscopy Techniques and ApplicationsMagnetic Properties and ApplicationsPiezoelectric Actuators and Control

Observation of magnetic domain structure in phase-separated manganites by Lorentz electron microscopy

Shigeo Mori2002-07-28Journal of Electron Microscopy

Magnetic domain structure in manganites was investigated by Lorentz electron microscopy, in order to understand some unusual physical properties, such as a colossal magnetoresistance (CMR) effect and a metal-to-insulator (MI) transition. In particular, we examined the spatial distribution of the charge/orbital ordered…

Magnetic and transport properties of perovskites and related materialsRare-earth and actinide compoundsElectronic and Structural Properties of Oxides